REFERENCES
- [1] JosephWang. Electrochemical glucose biosensors, 2008.
- [2] Na Lu, Changlu Shao, Xinghua Li, Teng Shen, Mingyi Zhang, Fujun Miao, Peng Zhang, Xin Zhang, Kexin Wang, Yang Zhang, and Yichun Liu. CuO/Cu2O nanofibers as electrode materials for non-enzymatic glucose sensors with improved sensitivity. RSC Advances, 4(59):31056–31061, 2014.
- [3] Yuchan Zhang, Yixin Liu, Liang Su, Zhonghua Zhang, Danqun Huo, Changjun Hou, and Yu Lei. CuO nanowires based sensitive and selective non-enzymatic glucose detection. Sensors and Actuators, B: Chemical, 191:86–93, 2014.
- [4] M. U. Anu Prathap, Balwinder Kaur, and Rajendra Srivastava. Hydrothermal synthesis of CuO micro- /nanostructures and their applications in the oxidative degradation of methylene blue and non-enzymatic sensing of glucose/H 2O 2. Journal of Colloid and Interface Science, 370(1):144–154, 2012.
- [5] Ding Jiang, Qian Liu, Kun Wang, Jing Qian, Xiaoya Dong, Zhenting Yang, Xiaojiao Du, and Baijing Qiu. Enhanced non-enzymatic glucose sensing based on copper nanoparticles decorated nitrogen-doped graphene. Biosensors and Bioelectronics, 54:273–278, 2014.
- [6] Jian Lv, Chuncai Kong, Yun Xu, Zhimao Yang, Xiaojing Zhang, Shengchun Yang, Ge Meng, Jinglei Bi, Jianhui Li, and Sen Yang. Facile synthesis of novel CuO/Cu2O nanosheets on copper foil for high sensitive nonenzymatic
glucose biosensor. Sensors and Actuators, B: Chemical, 248:630–638, 2017.
- [7] Marc Delvaux and Sophie Demoustier-Champagne. Immobilisation of glucose oxidase within metallic nanotubes
arrays for application to enzyme biosensors. Biosensors and Bioelectronics, 18(7):943–951, 2003.
- [8] F. Valentini, L. Galache Fernàndez, E. Tamburri, and G. Palleschi. Single Walled Carbon Nanotubes/polypyrrole-GOx composite films to modify gold microelectrodes for glucose biosensors: Study of the extended linearity. Biosensors and Bioelectronics, 43(1):75–78, 2013.
- [9] Susu Zhang, Guangli Zhang, Ping He, Wen Lei, Faqin Dong, Dingming Yang, and Zhirong Suo. Novel one-pot hydrothermal fabrication of cuprous oxideattapulgite/ graphene for non-enzyme glucose sensing. Analytical Methods, 7(6):2747–2753, 2015.
- [10] Huang Chen, Guokang Fan, Jie Zhao, Meijia Qiu, Peng Sun, Yifeng Fu, Dongxue Han, and Guofeng Cui. A
portable micro glucose sensor based on copper-based nanocomposite structure. New Journal of Chemistry, 43(20):7806–7813, 2019.
- [11] Yuqin Wang, Zhenyuan Ji, Xiaoping Shen, Guoxing Zhu, Jiheng Wang, and Xiaoyang Yue. Facile growth of Cu2O hollow cubes on reduced graphene oxide with remarkable electrocatalytic performance for nonenzymatic glucose detection. New Journal of Chemistry, 41(17):9223–9229, 2017.
- [12] Yuxin Zhao, Yanpeng Li, Zhaoyang He, and Zifeng Yan. Facile preparation of Cu-Cu2O nanoporous nanoparticles as a potential catalyst for non-enzymatic glucose sensing. RSC Advances, 3(7):2178–2181, 2013.
- [13] Sakthi Velmurgan, Rajkumar Devasenathipathy, Shen Ming Chen, and Sea FueWang. A Facile Chemical
Synthesis of Cu2O Nanocubes Covered with Co3O4 Nanohexagons for the Sensitive Detection of Glucose. Electroanalysis, 28(7):1547–1552, 2016.
- [14] K. M. El Khatib and R. M. Abdel Hameed. Development of Cu2O/Carbon Vulcan XC-72 as non-enzymatic
sensor for glucose determination. Biosensors and Bioelectronics, 26(8):3542–3548, 2011.
- [15] Zhenjing Zhuang, Xiaodong Su, Hongyan Yuan, Qun Sun, Dan Xiao, and Martin M.F. Choi. An improved sensitivity non-enzymatic glucose sensor based on a CuO nanowire modified Cu electrode. Analyst, 133(1):126–
132, 2008.
- [16] Xinyi Zhang, Dan Li, Laure Bourgeois, Huanting Wang, and Paul A Webley. Direct electrodeposition of porous gold nanowire arrays for biosensing applications. ChemPhysChem, 10(2):436–441, 2009.
- [17] Qian Yang, Mei Long, Lin Tan, Yi Zhang, Jin Ouyang, Ping Liu, and Aidong Tang. Helical TiO2 Nanotube Arrays Modified by Cu-Cu2O with Ultrahigh Sensitivity for the Nonenzymatic Electro-oxidation of Glucose. ACS Applied Materials and Interfaces, 7(23):12719–12730, 2015.
- [18] Mei Long, Lin Tan, Hongtao Liu, Zhen He, and Aidong Tang. Novel helical TiO2 nanotube arrays modified
by Cu2O for enzyme-free glucose oxidation. Biosensors and Bioelectronics, 59:243–250, 2014.
- [19] Xuemei Zhou, Huagui Nie, Zhen Yao, Youqing Dong, Zhi Yang, and Shaoming Huang. Facile synthesis of
nanospindle-like Cu 2O/straight multi-walled carbon nanotube hybrid nanostructures and their application in enzyme-free glucose sensing. Sensors and Actuators, B: Chemical, 168:1–7, 2012.
- [20] Yu HoWon and Lia A. Stanciu. Cu2O and Au/Cu2O particles: Surface properties and applications in glucose
sensing. Sensors (Switzerland), 12(10):13019–13033, 2012.
- [21] Guangliang Cui, Liang Gao, Binbin Yao, Shuangming Wang, Pinhua Zhang, and Mingzhe Zhang. Electrochemistry of CuO/In2O3 p-n heterojunction nano/microstructure array with sensitivity to H2 at and below room-temperature. Electrochemistry Communications, 30(3):42–45, 2013.
- [22] Guangliang Cui, Mingzhe Zhang, and Guangtian Zou. Resonant tunneling modulation in quasi-2D Cu2O/SnO2 p-n horizontal-multi-layer heterostructure for room temperature H2S sensor application. Scientific Reports, 3:1–8, 2013.
- [23] Guangliang Cui, Pinhua Zhang, Li Chen, Xiaoli Wang, Jianfu Li, Changmin Shi, and DongchaoWang. Highly sensitive H2S sensors based on Cu2O/Co3O4 nano/microstructure heteroarrays at and below room temperature. Scientific Reports, 7(November 2016):1–10,2017.
- [24] Jorge Ramírez-Ortiz, Tetsuya Ogura, Jorge Medina-Valtierra, Sofía E. Acosta-Ortiz, Pedro Bosch, J. Antonio
De Los Reyes, and Victor H. Lara. A catalytic application of Cu 2 O and CuO films deposited over fiberglass. Applied Surface Science, 174(3-4):177–184, 2001.
- [25] Jingwei Huang, Zhengping Dong, Yingdong Li, Jing Li, JiaWang, Haidong Yang, Shuwen Li, Shujing Guo, Jun Jin, and Rong Li. High performance non-enzymatic glucose biosensor based on copper nanowires-carbon nanotubes hybrid for intracellular glucose study. Sensors and Actuators, B: Chemical, 182:618–624, 2013.
- [26] Xiangjian Liu, Ling Long, Wenxiu Yang, Lulu Chen, and Jianbo Jia. Facilely electrodeposited coral-like copper
micro-/nano-structure arrays with excellent performance in glucose sensing. Sensors and Actuators, B: Chemical, 266:853–860, 2018.
- [27] Ying Mu, Dongling Jia, Yayun He, Yuqing Miao, and Hai Long Wu. Nano nickel oxide modified nonenzymatic
glucose sensors with enhanced sensitivity through an electrochemical process strategy at high potential. Biosensors and Bioelectronics, 26(6):2948–2952, 2011.
- [28] Petra Majzlikova, Jan Prasek, Jana Chomoucka, Jana Drbohlavova, Jan Pekarek, Radim Hrdy, Jaromir Hubalek, and Libuse Trnkova. Cu2O based electrochemical sensor for direct glucose detection. In Proceedings of IEEE Sensors, 2013.